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Structural hysteresis in dragline spider silks induced by supercontraction: An x-ray fiber micro-diffraction study

机译:超收缩引起的拉铲蜘蛛丝的结构滞后:X射线纤维微衍射研究

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摘要

Interaction with water causes shrinkage and significant changes in the structure of spider dragline silks, which has been referred to as supercontraction in the literature. Preferred orientation or alignment of protein chains with respect to the fiber axis is extensively changed during this supercontraction process. Synchrotron x-ray micro-fiber diffraction experiments have been performed on Nephila clavipes and Argiope aurantia major and minor ampullate dragline spider fibers in the native dry, contracted (by immersion in water) and restretched (from contracted) states. Changes in the orientation of β-sheet nanocrystallites and the oriented component of the amorphous network have been determined from wide-angle x-ray diffraction patterns. While both the crystalline and amorphous components lose preferred orientation on wetting with water, the nano-crystallites regain their orientation on wet-restretching, whereas the oriented amorphous components only partially regain their orientation. Dragline major ampullate silks in both the species contract more than their minor ampullate silks.
机译:与水的相互作用导致蜘蛛式拉铲丝的收缩和结构的显着变化,这在文献中被称为超收缩。在此超收缩过程中,蛋白质链相对于纤维轴的优选取向或排列方式发生了很大变化。已经在天然干燥,收缩(通过浸入水中)和再收缩(收缩)状态下对Nephila锁骨和Argiope aurantia大和次小壶腹牵引线蜘蛛纤维进行了同步加速器X射线微纤维衍射实验。已经从广角x射线衍射图确定了β-片状纳米晶体的取向和非晶网络的取向组分的变化。尽管结晶和非晶态成分在用水润湿时都会失去首选的取向,但纳米微晶在湿法重浸时会恢复其取向,而取向的非晶态成分仅会部分恢复其取向。两个物种的拉丝线主要壶腹丝比其次要壶腹丝收缩更多。

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  • 期刊名称 other
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  • 年(卷),期 -1(5),2
  • 年度 -1
  • 页码 1462–1473
  • 总页数 24
  • 原文格式 PDF
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